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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and evaluation of N,N-dialkyl enkephalin-based affinity labels for delta opioid receptors
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Synthesis and evaluation of N,N-dialkyl enkephalin-based affinity labels for delta opioid receptors

机译:基于N,N-二烷基脑啡肽的δ阿片受体亲和标记的合成和评价

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To develop affinity labels for delta opioid receptors based on peptide antagonists, the Phe(4) residues of N,N-dibenzylleucine enkephalin and N,N-diallyl[Aib(2),Aib(3)]leucine enkephalin (ICI-174,864) were substituted with either Phe(p-NCS) or Phe(p-NHCOCH2Br). A general synthetic method was developed for the conversion of small peptide substrates into potential affinity labels. The target peptides were synthesized using Phe(p-NH2) and a Boc/Fmoc orthogonal protection strategy which allowed for late functional group conversion of a p-amine group in the peptides to the desired affinity labeling moieties. A key step in the synthesis was the selective deprotection of a Boc group in the presence of a tert-butyl ester using trimethylsilyl trifluoromethanesulfonate (TMS-OTf). The target peptides were evaluated in radioligand binding experiments in Chinese hamster ovary (CHO) cells expressing delta or mu opioid receptors. The delta receptor affinities of the N,N-dibenzylleucine enkephalin analogues were 2.5-10-fold higher than those for the corresponding ICI-174,864 analogues. In general, substitution at the para position of Phe(4) decreased binding affinity at both delta and mu receptors in standard radioligand binding assays; the one exception was N,N-dibenzyl[Phe(p-NCS)(4)]leucine enkephalin (2) which exhibited a 2-fold increase in affinity for delta receptors (IC50 = 34.9 nM) compared to N,N-dibenzylleucine enkephalin (IC50 = 78.2 nM). The decreases in mu receptor affinities were greater than in delta receptor affinities so that all of the analogues tested exhibited significantly greater delta receptor selectivity than the unsubstituted parent peptides. Of the target peptides tested, only N,N-dibenzyl[Phe(p-NCS)(4)]leucine enkephalin (2) exhibited wash-resistant inhibition of radioligand binding to delta receptors. To our knowledge, 2 represents the first peptide-based affinity label to utilize an isothiocyanate group as the electrophilic affinity labeling moiety. As a result of this study, enkephalin analogue 2 emerges as a potential affinity label useful for the further study of delta opioid receptors. [References: 40]
机译:要开发基于肽拮抗剂的δ阿片受体的亲和标记,N,N-二苄基亮氨酸脑啡肽和N,N-二烯丙基[Aib(2),Aib(3)]亮氨酸脑啡肽的Phe(4)残基(ICI-174,864)被Phe(p-NCS)或Phe(p-NHCOCH2Br)取代。开发了一种通用的合成方法,用于将小肽底物转化为潜在的亲和标记。使用Phe(p-NH2)和Boc / Fmoc正交保护策略合成靶肽,该策略允许将肽中的p-胺基团后期官能团转化为所需的亲和标记部分。合成中的关键步骤是使用三甲基甲硅烷基三氟甲磺酸酯(TMS-OTf)在叔丁酯存在下对Boc基团进行选择性脱保护。在表达δ或μ阿片受体的中国仓鼠卵巢(CHO)细胞中,通过放射性配体结合实验评估了目标肽。 N,N-二苄基亮氨酸脑啡肽类似物的δ受体亲和力比相应的ICI-174,864类似物的亲和力高2.5-10倍。通常,在标准放射性配体结合测定中,在Phe(4)对位的取代会降低在del和mu受体上的结合亲和力。一个例外是N,N-二苄基[Phe(p-NCS)(4)]亮氨酸脑啡肽(2)与N,N-二苄基亮氨酸相比,对δ受体的亲和力提高了2倍(IC50 = 34.9 nM)。脑啡肽(IC50 = 78.2 nM)。 mu受体亲和力的降低大于δ受体亲和力的降低,因此所有测试的类似物都比未取代的亲本肽表现出明显更高的delta受体选择性。在测试的目标肽中,只有N,N-二苄基[Phe(p-NCS)(4)]亮氨酸脑啡肽(2)表现出耐洗涤的放射性配体与δ受体的结合抑制作用。据我们所知,2表示第一个利用异硫氰酸酯基团作为亲电亲和标记部分的基于肽的亲和标记。这项研究的结果是,脑啡肽类似物2作为潜在的亲和标记物出现,可用于进一步研究δ阿片样物质受体。 [参考:40]

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